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通过被动计算机模型估算浦肯野神经元的膜电阻。

Membrane resistivity estimated for the Purkinje neuron by means of a passive computer model.

作者信息

Shelton D P

出版信息

Neuroscience. 1985 Jan;14(1):111-31. doi: 10.1016/0306-4522(85)90168-x.

Abstract

A multicompartment passive electrotonic computer model is constructed for the cerebellar Purkinje cell of the guinea-pig. The model has 1089 coupled compartments to accurately represent the morphology of the Purkinje cell. In order that the calculated behavior of the model fit the published electrophysiological observations of somatic and dendritic input conductance, the neural membrane resistivity must be spatially non-uniform. The passive electrical parameter values for which the model best fits the observations of input conductances, pulse attenuation and current-clamp voltage transients are rm,dend = 45,740 omega cm2, rm,soma = 760 omega cm2, ri = 225 omega cm and cm = 1.16 microF/cm2 (the membrane and cytoplasm specific resistivities and membrane specific capacitance, respectively). The model with these parameter values is electrically compact, with electrotonic length X = 0.33 and dendritic dominance ratio p = 0.44. Analysis of the calculated voltage transient of the multicompartment model by the methods of equivalent-cylinder cable theory is shown to result in very different and unreliable conclusions. The significance for neuronal function of the estimated electrical parameter values is discussed. The possible effect of active conductances on these conclusions is assessed.

摘要

构建了豚鼠小脑浦肯野细胞的多房室被动电紧张计算机模型。该模型有1089个耦合房室,以精确呈现浦肯野细胞的形态。为使模型的计算行为符合已发表的关于体细胞和树突输入电导的电生理观测结果,神经膜电阻率必须在空间上不均匀。模型最符合输入电导、脉冲衰减和电流钳电压瞬变观测结果的被动电参数值为:rm,dend = 45,740Ω·cm²,rm,soma = 760Ω·cm²,ri = 225Ω·cm,cm = 1.16μF/cm²(分别为膜和细胞质的比电阻率以及膜的比电容)。具有这些参数值的模型在电学上是紧凑的,电紧张长度X = 0.33,树突优势比p = 0.44。结果表明,用等效圆柱电缆理论方法分析多房室模型计算出的电压瞬变会得出非常不同且不可靠的结论。讨论了估计的电参数值对神经元功能的意义。评估了主动电导对这些结论的可能影响。

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